A Novel Cyclopentadienone and its Ruthenium and Iron Tricarbonyl Complexes
Author | Salih, Kifah S. M. |
Available date | 2022-01-30T06:21:54Z |
Publication Date | 2021-12-14 |
Publication Name | European Journal of Inorganic Chemistry |
Identifier | http://dx.doi.org/10.1002/ejic.202100745 |
Citation | F. Nährig, N. Nunheim, K. S. M. Salih, J.-Y. Chung, D. Gond, Y. Sun, S. Becker, W. R. Thiel, Eur. J. Inorg. Chem. 2021, 2021, 4832. |
ISSN | 14341948 |
Abstract | A simple and efficient protocol allows the oxidation of the cyclopentadiene derivative 5H-dibenzo[e,h]-dibenzo[3,4 : 6,7]cyclohept[1,2-a]azulene (CpCH) provide according ketone CpCO. Comparable to the situation found for CpCH, the bending of the four annulated six-membered rings defines the C2 symmetric molecular structure of CpCO. The cyclopentadienone CpCO readily reacts with [Ru3(CO)12] and [Fe3(CO)12] to generate tricarbonyl complexes of the type [(η4-CpCO)M(CO)3]. In contrast to [(η4-CpCO)Ru(CO)3], the tricarbonyliron(0) complex is sensitive to oxygen and moisture. Refluxing [(η4-CpCO)Ru(CO)3] in isopropanol makes the hydrido-bridged complex [((η4-CpCO)2H)Ru2(CO)4H] accessible, an analogue to Shvo's catalyst. Both ruthenium complexes and their ligand CpCO were characterized spectroscopically and by single crystal x-ray diffraction. The activity of [(η4-CpCO)Ru(CO)3] was investigated for a series of transfer hydrogenation reactions. |
Language | en |
Publisher | Wiley |
Subject | Catalysis Hydrogentransfer Iron Pentadienoneligand Ruthenium |
Type | Article |
Issue Number | 46 |
Volume Number | 2021 |
Files in this item
This item appears in the following Collection(s)
-
Chemistry & Earth Sciences [587 items ]